Application range of hydrogen flame ion detector
Application range of hydrogen flame ion detector, Total:81 items.
The international standard classification for "Application range of hydrogen flame ion detector" includes: Ambient atmospheres , Other standards related to optics and optical measurements , Transport exhaust emissions , Bases , Pigments and extenders .
The Chinese standard classification for "Application range of hydrogen flame ion detector" includes: Analysis methods for toxic substances in atmosphere , chromatograph , Piston type internal combustion engine and other power equipment in general , Basic standards and general methods for dye , Inorganic acid and alkali .
National Metrological Technical Specifications of the People's Republic of China
- JJF(石化)033-2020 Calibration Specification for Portable Volatile Organic Compounds Leak Detector (Hydrogen Flame Ion Method)
- JJF(石化) 033-2020 Calibration Specification for Portable Volatile Organic Compounds Leak Detector (Hydrogen Flame Ion Method)
Shandong Provincial Standard of the People's Republic of China
- DB37/T 4434-2021 Ambient air—Determination of 57 kinds of ozone precursor compounds—Collected inspecially-prepared canisters and analyzed by gas chromatography-flame ionization detector/mass spectrometer
- DB37/T 3922-2020 Determination of total hydrocarbons, methane and non-methane total hydrocarbons in exhaust gas from stationary pollution sources Portable catalytic oxidation-hydrogen flame ionization detector method
- DB37/T 4078-2020 Continuous monitoring of volatile organic compounds in ambient air by gas chromatography-hydrogen flame ionization detector/mass spectrometry detector
Professional Standard - Commodity Inspection
- SN/T 3695.1-2014 Determination of mirex in electrical and electronic products - Part 1: Gas chromatography - Method by flame ionization detector
- SN/T 2005.3-2006 Determination of polybromobiphenyls and polybromobiphenyl in electrical and electronic equipment - Part 3: GC-FID method
Group Standards of the People's Republic of China
- T/ZSZJX 010-2023 Ambient air-Determination of 104 volatile organic compounds Collected in canisters and analyzed by gas chromatography-hydrogen flameionization detector/mass spectrometry
- T/GZTPA 0010-2021 Gas Chromatography Hydrogen Flame Ionization Method for Detection of Soluble Sugar in Guizhou Tea
Professional Standard - Machinery
- JB/T 9361-1999 Test method for flame ionization detector of gas chromatography
General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China
- GB/T 8193-1987 Diesel engine emissions-Determination of total hydrocarbons-Hydrogen flame ionization method(HFID)
- GB/T 32193-2015 Standard practice for testing flame ionization detectors used in gas or supercritical fluid chromatography
- GB/T 2403-2006 Cationic dyes - Determination of suitable range of pH of dyeing liquor in acrylic dyeing
- GB/T 2403-2014 Cationic dyes―Determination of suitable range of pH of dyeing liquor in acrylic dyeing
- GB/T 11200.3-1989 Membrane process sodium hydroxide; Determination of calcium contents-Flame atomic absorption method
- GB/T 2403-1980 Determination of suitable pH range of the dye both for the dyeing of acrylic fibres with cationic dyes
Fujian Provincial Standard of the People's Republic of China
- DB35/T 1913-2020 Determination of non-methane total hydrocarbons in exhaust gas from stationary pollution sources Portable catalytic oxidation-hydrogen flame ionization detector method
Beijing Provincial Standard of the People's Republic of China
- DB11/T 1367-2016 Determination of methane/total hydrocarbons/non-methane total hydrocarbons in exhaust gas from stationary pollution sources Portable hydrogen flame ionization detector method
Sichuan Provincial Standard of the People's Republic of China
- DB51/T 2004-2015 Ion Chromatography for Detection of Sulfate in High Purity Sodium Hydroxide
Military Standard of the People's Republic of China-General Armament Department
- GJB 9788-2020 Specification for alarms for poison detection using ion migration method
未注明发布机构
- ASTM RR-D02-1827 2016 D7423-Test Method for Determination of Oxygenates in C2, C3, C4, and C5 Hydrocarbon Matrices by Gas Chromatography and Flame Ionization Detection
- DIN EN 12619:1999 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
VDI - Verein Deutscher Ingenieure
- VDI 3481 Blatt 1-1975 Messung gasfoermiger Emissionen; Messen der Kohlenwasserstoff-Konzentration; Flammen-Ionisations-Detektor (FID)
- VDI 2466 Blatt 2-2007 Messen gasfoermiger Emissionen - Messen von Methan - Automatisches Verfahren - Flammenionisationsdetektor (FID)
- VDI 3481 Blatt 4-2004 Gaseous emission measurement - Measurement of the concentrations of total organic carbon and methane carbon using the flame ionisation detector (FID)
American Society for Testing and Materials (ASTM)
- ASTM D7675-11 Standard Test Method for Test Method for the Determination of Total Hydrocarbons in Hydrogen by FID Based Total Hydrocarbon (THC) Analyzer
- ASTM E594-96 Standard Practice for Testing Flame Ionization Detectors Used in Gas or Supercritical Fluid Chromatography
- ASTM E594-96(2019) Standard Practice for Testing Flame Ionization Detectors Used in Gas or Supercritical Fluid Chromatography
- ASTM D7423-23 Standard Test Method for Determination of Oxygenates in C2, C3, C4, and C5 Hydrocarbon Matrices by Gas Chromatography and Flame Ionization Detection
RU-GOST R
- GOST R 56867-2016 Hydrocarbons C2-C5. Determination of oxygenates by gas chromatography using a flame ionization detector
- GOST R ISO 17091-2016 Workplace air. Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide. Method by measurement of corresponding cations by suppressed ion chromatography
- GOST R 57975.1-2017 Associated oil gas. Determination of composition by gas chromatography method. Part 1. Determination of hydrocarbons C1-C8+ and inorganic gases content by flame ionization detector and thermal conductivity detector
- GOST R ISO 25140-2017 Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection
- GOST 16287-1977 Glass industrial electrodes for determination hydrogan ion activition SSI. Specifications
- GOST R ISO 26142-2013 Hydrogen detection apparatus. Stationary applications
Association Francaise de Normalisation
- NF T90-124:2019 Water quality - Determination of the volatile hydrocarbon index - Head-space gas chromatographic method with flame ionisation detector
- NF ISO 17091:2013 Air in workplaces - Determination of the content of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide - Method by measuring the corresponding cations using ion chromatography
- NF X43-268*NF ISO 17091:2013 Workplace air - Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide - Method by measurement of corresponding cations by suppressed ion chromatography
- NF X43-353*NF EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID).
- NF EN 12619:2013 Emissions from stationary sources - Determination of total organic carbon mass concentration - Continuous flame ionization detector method
SCC
- VDI 3481 BLATT 3-1995 Measuring gaseous emissions — Measuring volatile organic compounds, especially solvents, using the flame ionization detector (FID)
- VDI 3483 BLATT 1-1979 Measuring gaseous emissions; measuring the sum of organic substances with a flame ionization detector (FID); basics
- VDI 3481 BLATT 4-2007 Measuring gaseous emissions — Measuring the concentrations of total C and methane C using the flame ionization detector (FID)
- VDI 3481 BLATT 4-2007 Measuring gaseous emissions — Measuring the concentrations of total C and methane C using the flame ionization detector (FID)
- VDI 2459 BLATT 1-2000 Measuring gaseous emissions — Measuring carbon monoxide concentration using a flame ionization detector after reduction to methane
- 12/30258004 DC BS ISO 17091. Workplace air. Determination of lithium hydroxide, sodium hydroxide , potassium hydroxide and calcium dihydroxide. Method by measurement of corresponding cations by suppressed ion chromatography
- VDI 3483 BLATT 1-1979 Measuring gaseous emissions; measuring the sum of organic substances with a flame ionization detector (FID); basics
- DANSK DS/EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
- DANSK DS/EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
- NS-EN 12619:2013 Stationary source emissions — Determination of the mass concentration of total gaseous organic carbon — Continuous flame ionisation detector method
Association of German Mechanical Engineers
- VDI 3860 Blatt 3-2011 Measurement of landfill gas - Measurement of surface emissions using the flame ionisation detector (FID)
- VDI 2466 Blatt 2-2008 Gaseous emission measurement - Measurement of methane - Automatic method - Flame ionisation detector (FID)
UNKNOWN
- GB 20077663-T-604 Flame ionization detector test method for gas chromatography/supercritical fluid chromatography
British Standards Institution (BSI)
- BS ISO 17091:2013 Workplace air. Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide. Method by measurement of corresponding cations by suppressed ion chromatography
- BS EN ISO 25140:2010 Stationary source emissions. Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
GSO
- BH GSO ISO 17091:2022 Workplace air — Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide — Method by measurement of corresponding cations by suppressed ion chromatography
- GSO ISO 17091:2021 Workplace air — Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide — Method by measurement of corresponding cations by suppressed ion chromatography
HU-MSZT
- MSZ 260/4-1971 Detection and determination of hydrogen ion concentration (pH value) in sewage treatment
- MSZ 448/17.lap-1964 Detection of fluoride ions in drinking water
- MSZ 21976/7-1981 Inspection of solid waste in residential areas, determination of hydrogen ion compound content
PL-PKN
- PN C04860-12-1991 Ion exchange resins. Testing methods. Determination of the operating exchange capacity of cation exchange resins in hydrogen ion exchange
Korean Agency for Technology and Standards (KATS)
- KS A ISO 11929-7:2008 Determination of the detection limit and decision threshold for ionizing radiation measurements-Part 7:Fundamentals and general applications
- KS A ISO 11929-7:2014 Determination of the detection limit and decision threshold for ionizing radiation measurements-Part 7:Fundamentals and general applications
- KS I ISO 17091:2020 Workplace air — Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide — Method by measurement of corresponding cations by suppressed ion chromatography
- KS A ISO 11929-2:2014 Determination of the detection limit and decision threshold for ionizing radiation measurements-Part 2:Fundamentals and application to counting measurements with the influence of sample treatment
- KS A ISO 11929-2:2002 Determination of the detection limit and decision threshold for ionizing radiation measurements-Part 2:Fundamentals and application to counting measurements with the influence of sample treatment
- KS I ISO 25140-2012(2017) Stationary source emissions-Automatic method for the determination of the methane concentration using flame ionization detection(FID)
- KS A ISO 11929-6:2014 Determination of the detection limit and decision threshold for ionizing radiation measurements-Part 6:Fundamentals and applications to measurements by use of transient mode
- KS I ISO 25140:2022 Stationary source emissions — Automatic method for the determination of the methane concentration using flame ionization detection(FID)
- KS A ISO 11929-6:2008 Determination of the detection limit and decision threshold for ionizing radiation measurements-Part 6:Fundamentals and applications to measurements by use of transient mode
KR-KS
- KS I ISO 17091-2020 Workplace air — Determination of lithium hydroxide, sodium hydroxide, potassium hydroxide and calcium dihydroxide — Method by measurement of corresponding cations by suppressed ion chromatography
- KS I ISO 25140-2022 Stationary source emissions — Automatic method for the determination of the methane concentration using flame ionization detection(FID)
CZ-CSN
- CSN 83 4741-1984 Air pollution prevention. Emission measurement of organic compounds. FID method for continuous measurement of the sum of hydrocarbons.
BELST
- STB 1047-97 Measuring electrodes for determination of hydrogen ions activity. General technical specifications
International Organization for Standardization (ISO)
- ISO 17091:2013 Workplace air.Determination of lithium hydroxide, sodium hydroxide,potassium hydroxide and calcium dihydroxide.Method by measurement of corresponding cations by suppressed ion chromatography
Danish Standards Foundation
- DS/EN ISO 25140:2010 Stationary source emissions - Automatic method for the determination of the methane concentration using flame ionisation detection (FID)
- DS/EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method
US-CFR-file
- CFR 40-1065.260-2014 Protection of Environment. Part1065:Engine-testing procedures. Section1065.260:Flame-ionization detector.
German Institute for Standardization
- DIN EN 12619:2013-04 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method; German version EN 12619:2013
- DIN 54410:1985 Testing of ion exchangers; determination of density
AENOR
- UNE-EN 12619:2013 Stationary source emissions - Determination of the mass concentration of total gaseous organic carbon - Continuous flame ionisation detector method